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首页> 外文期刊>Ultrasonics sonochemistry >Effects of ultrasound on growth, bioconversion of isoflavones and probiotic properties of parent and subsequent passages of Lactobacillus fermentum BT 8633 in biotin-supplemented soymilk
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Effects of ultrasound on growth, bioconversion of isoflavones and probiotic properties of parent and subsequent passages of Lactobacillus fermentum BT 8633 in biotin-supplemented soymilk

机译:超声对补充生物素的豆浆中发酵乳杆菌BT 8633的生长,异黄酮的生物转化以及亲本和益生菌特性的影响

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摘要

This study aimed to evaluate the effects of ultrasound on Lactobacillus fermentum BT 8633 in parent and subsequent passages based on their growth and isoflavone bioconversion activities in biotin-supplemented soymilk. The treated cells were also assessed for impact of ultrasound on probiotic properties. The growth of ultrasonicated parent cells increased (P < 0.05) by 3.23-9.14% compared to that of the control during fermentation in biotin-soymilk. This was also associated with enhanced intracellular and extracellular (8.4-17.0% and 16.7-49.2%, respectively; P < 0.05) β-glucosidase specific activity, leading to increased bioconversion of isoflavones glucosides to aglycones during fermentation in biotin-soymilk compared to that of the control (P < 0.05). Such traits may be credited to the reversible permeabilized membrane of ultrasonicated parent cells that have facilitated the transport of molecules across the membrane. The growing characteristics of first, second and third passage of treated cells in biotin-soymilk were similar (P > 0.05) to that of the control, where their growth, enzyme and isoflavone bioconversion activities (P > 0.05) were comparable. This may be attributed to the temporary permeabilization in the membrane of treated cells. Ultrasound affected probiotic properties of parent L. fermentum, by reducing tolerance ability towards acid (pH 2) and bile; lowering inhibitory activities against selected pathogens and reducing adhesion ability compared to that of the control (P < 0.05). The first, second and third passage of treated cells did not exhibit such traits, with the exception of their bile tolerance ability which was inherited to the first passage (P < 0.05). Our results suggested that ultrasound could be used to increase bioactivity of biotin-soymilk via fermentation by probiotic L. fermentum FTDC 8633 for the development of functional food.
机译:这项研究旨在评估超声波对发酵乳杆菌BT 8633的亲代和后续传代的影响,基于它们在生物素补充豆浆中的生长和异黄酮的生物转化活性。还评估了处理细胞的超声对益生菌性质的影响。在生物素豆奶发酵过程中,与对照相比,超声处理的亲本细胞的生长比对照组增加(P <0.05)3.23-9.14%。这也与细胞内和细胞外(分别为8.4-17.0%和16.7-49.2%; P <0.05)β-葡萄糖苷酶比活性增强相关,与在生物素豆浆发酵过程中,导致异黄酮葡萄糖苷向糖苷配基的生物转化相比对照(P <0.05)。这种特性可以归因于超声亲代细胞的可逆透化膜,其促进了分子跨膜的运输。生物素豆浆中经处理的第一,第二和第三代细胞的生长特性与对照相似(P> 0.05),而对照的生长,酶和异黄酮的生物转化活性(P> 0.05)可比。这可能归因于处理过的细胞膜的暂时透化。超声波通过降低对酸(pH 2)和胆汁的耐受能力来影响亲本发酵乳杆菌的益生菌性质;与对照组相比,降低了对选定病原体的抑制活性并降低了粘附能力(P <0.05)。处理过的细胞的第一,第二和第三次传代没有表现出这些特征,除了它们的胆汁耐受能力被继承到第一传代(P <0.05)。我们的结果表明,超声可用于通过益生菌发酵乳杆菌FTDC 8633发酵来提高生物素豆浆的生物活性,从而开发功能性食品。

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